Title :
Broadband and Compact Coupled Coplanar Stripline Filters With Impedance Steps
Author :
Yang, Ning ; Caloz, Christophe ; Wu, Ke ; Chen, Zhi Ning
Author_Institution :
Ecole Polytech. de Montreal, Montreal
Abstract :
Novel broadband and compact stepped-impedance coupled coplanar stripline bandpass filters are presented, analyzed theoretically, and demonstrated experimentally. These filters are based on impedance step, capacitive gap, broadside coupling, and inductive shorted strip discontinuities, which are modeled in terms of impedance (K-) and admittance (J-) inverters. Broadside coupled coplanar stripline is analyzed for the first time by the even-/odd-mode decomposition technique using the finite-element method. The broadband and compact nature of the filters is explained from the discontinuities and the coupled line structures. Specifically, cross coupling is used to enhance the selectivity of both the low and high cutoffs, leading to triplet and quadruplet cross-coupled broadband filters with finite-frequency transmission zeros. Due to their broad bandwidth, compact size, differential configuration, and low fabrication cost, the proposed filters represent excellent solutions for codesigned RF and microwave systems such as ultra-wideband transceivers.
Keywords :
band-pass filters; coplanar waveguides; finite element analysis; poles and zeros; strip line discontinuities; strip line filters; admittance inverters; bandpass filters; broadband filters; broadside coupling; capacitive gap; compact coupled coplanar stripline filters; even-/odd-mode decomposition technique; finite element method; finite-frequency transmission zeros; impedance inverters; impedance steps; inductive shorted strip discontinuities; microwave systems; ultra wideband transceiver; Admittance; Band pass filters; Couplings; Finite element methods; Impedance; Inverters; Microwave filters; Stripline; Strips; Transmission line discontinuities; Broadband filter; coplanar stripline (CPS); coupled line; even mode; impedance step; inverter; odd mode;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2007.909609